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Updated: Jul 8, 2026

Preparation of Thermoresponsive Nanostructured Surfaces for Tissue Engineering
Published on: March 1, 2016
Microalgae harvesting via thermoresponsive polymers: Insights into poly(N-isopropylacrylamide) efficacy and
Xuexue Wang1, Mi Li2, Yi Zheng3
1Department of Grain Science and Industry, Kansas State University, 1980 Kimball Avenue, Manhattan, KS 66506, USA; College of Life and Environment Science, HuangShan University, 39 Xihai Road, Huangshan City, Anhui Province 245041, China.
Abstract:
Microalgae biorefinery is limited by energy-intensive harvesting. Inspired by fungal self-pelletization, this study explored thermoresponsive polymers (TRPs) for microalgae harvesting. The lower critical solution temperature (LCST) of TRPs in cultivation media was significantly lower than that in water, facilitating temperature-induced phase separation. Harvesting efficiency depends on TRP molecular weight (MW), concentration, and algal species (size, medium, cell wall composition). PNIPAM-300 kDa achieved > 90% efficiency for Nannochloropsis oculata, a seawater microalga whose glucosamine-rich cell walls could partly explain its pronounced MW sensitivity. Introducing cationic groups (e.g., allylamine) reduced efficiency, suggesting a physical entrapment mechanism rather than charge-based flocculation. After harvesting, all tested microalgae species consistently exhibited wrinkled walls, dimmed chlorophyll fluorescence, and reduced viability, suggesting that TRP processing could facilitate intracellular product release. This TRP-induced method enables rapid harvesting with potential downstream advantages, marking a step toward sustainable microalgae processing.
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